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801.
Expansion of irrigation in the Yellow River (Huang He in Chinese) Basin of China is a major accomplishment of the post-revolutionary period in China. Irrigation reliance on the Yellow River was anticipated to not only supply greater reliability of water for crops, but also to improve the productivity of aeolian, saline and alkali soils because of the high sediment loads in the river. Irrigation expansion also was a significant factor in affecting human modification of the landscape ecosystem in the lower reaches of the Yellow River. Based on field investigation and sampling of the amount and distribution of used suspended sediment load in irrigated areas, this paper analyzes the impact of the suspended sediment on soil texture, fertility and salinity and the consequences to the landscape ecosystem. Results indicate that soil quality has indeed been improved through irrigation and related deposition of sediment, but some local problems created by long periods of irrigation should not be ignored in the future.  相似文献   
802.
Polycyclic aromatic hydrocarbons(PAHs), as persistent toxic substances(PTS), have been widely monitored in coastal environment, including seawater and sediment. However, scientific monitoring methods, like ecological risk assessment and integrated biomarker response, still need massive researches to verify their availabilities. This study was performed in March, May, August and October of 2018 at eight sites, Yellow River estuary(S1), Guangli Port(S2), Xiaying(S3), Laizhou(S4), Inner Bay(S5), Ou...  相似文献   
803.
High efficient removal of antibiotics during nutriments recovery for biomass production poses a major technical challenge for photosynthetic microbial biofilm-based wastewater treatment since antibiotics are always co-exist with nutriments in wastewater and resist biodegradation due to their strong biotoxicity and recalcitrance. In this study, we make a first attempt to enhance metronidazole (MNZ) removal from wastewater using electrochemistry-activated binary-species photosynthetic biofilm of Rhodopseudomonas Palustris (R. Palustris) and Chlorella vulgaris (C. vulgaris) by cultivating them under different applied potentials. The results showed that application of external potentials of -0.3, 0 and 0.2 V led to 11, 33 and 26-fold acceleration in MNZ removal, respectively, as compared to that of potential free. The extent of enhancement in MNZ removal was positively correlated to the intensities of photosynthetic current produced under different externally applied potentials. The binary-species photoelectrogenic biofilm exhibited 18 and 6-fold higher MNZ removal rate than that of single-species of C. vulgaris and R. Palustris, respectively, due to the enhanced metabolic interaction between them. Application of an external potential of 0V significantly promoted the accumulation of tryptophan and tyrosine-like compounds as well as humic acid in extracellular polymeric substance, whose concentrations were 7.4, 7.1 and 2.0-fold higher than those produced at potential free, contributing to accelerated adsorption and reductive and photosensitive degradation of MNZ.  相似文献   
804.
To meet the challenges posed by global arsenic water contamination, the MgAlMn-LDHs with extraordinary efficiency of arsenate removal was developed. In order to clarify the enhancement effect of the doped-Mn on the arsenate removal performance of the LDHs, the cluster models of the MgAlMn-LDHs and MgAl-LDHs were established and calculated by using density functional theory (DFT). The results shown that the doped-Mn can significantly change the electronic structure of the LDHs and improve its chemical activity. Compared with the MgAl-LDHs that without the doped-Mn, the HOMO-LUMO gap was smaller after doping. In addition, the -OH and Al on the laminates were also activated to improve the adsorption property of the LDHs. Besides, the doped-Mn existed as a novel active site. On the other hand, the MgAlMn-LDHs with the doped-Mn, the increased of the binding energy, as well as the decreased of the ion exchange energy of interlayer Cl, making the ability to arsenate removal had been considerably elevated than the MgAl-LDHs. Furthermore, there is an obvious coordination covalent bond between arsenate and the laminates of the MgAlMn-LDHs that with the doped-Mn.  相似文献   
805.
806.
Spherical porous materials prepared from the emulsion template used in the water treat-ment have displayed a vast prospect,as the high surface area,abundant porous structure,convenient operation and excellent adsorption performance.But the tedious fabrication process,high consumption of organic solvent and surfactant limited the application widely.Herein,a facile and eco-friendly spherical porous adsorbent (SPA) is fabricated from the green surfactant-free (corn oil)-in-water Pickering medium internal phase emulsions (Pick-ering MIPEs) via the convenient ion crosslinking procedure.The Pickering MIPEs synergis-tically stabilized with the semi-coke (SC),which is the natural particle produced from the shale oil distillation,and sodium alginate (SA) has excellent storage and anti-coalescence stability.The as-prepared porous adsorbent possessed the abundant pore structure,which provided favorable conditions for effective mass transfer in adsorption,and could be tuned by varying the SA dosage.The saturation adsorption capacities of Pb(Ⅱ) and Cd(Ⅱ) can be achieved with 460.54 and 278.77 mg/g within 45 min at 25℃,respectively.Overall,this study supplied a viable and eco-friendly route for fabricating the spherical porous adsorbent with a tunable porous structure for heavy metal ion wastewater.  相似文献   
807.
米曲霉发酵厨余垃圾制备富酶产物的研究   总被引:1,自引:0,他引:1       下载免费PDF全文
为了探讨利用微生物发酵厨余垃圾产酶的最佳条件,实现厨余垃圾高值资源化,选取米曲霉为试验菌种,基于米曲霉BNCC142787 (简称“米曲霉B”)、米曲霉CGMCC3.4427 (简称“米曲霉C”)的生长特性解析,研究不同培养方式(静置、振荡)和培养温度(30、35、40 ℃)对米曲霉好氧发酵厨余垃圾产酶性能的影响. 结果表明:米曲霉B和米曲霉C分别在30 ℃和40 ℃、pH为6的培养条件下生长最佳;与静置培养相比,振荡培养可显著提高米曲霉菌丝体的形成和生长速率,促进淀粉酶和蛋白酶分泌. 米曲霉B在40 ℃下厨余垃圾好氧发酵48 h时蛋白酶活性最高,为66.64 U/g;在30 ℃下好氧发酵48 h时,其淀粉酶活性最佳,为129.44 U/g. 米曲霉C在40 ℃下、厨余垃圾好氧发酵96 h时蛋白质酶和淀粉酶活性均达到最高,分别为64.02和131.11 U/g. 研究显示,米曲霉B和米曲霉C产生蛋白酶与淀粉酶的能力相当,但米曲霉B生长速率快,所需发酵时间短,可在温和的条件下实现产酶,因此采用米曲霉B在40 ℃、好氧发酵48 h条件下进行酶源制备,可充分利用厨余垃圾中的营养物质获得富含淀粉酶和蛋白酶的产物,具有显著的应用潜力.   相似文献   
808.
沉积物中石油类污染物的释放过程受到海洋水动力、环境因素、海床沉积物特性及生物扰动等条件的影响,引发的二次污染作用周期长,而且对水体环境、沿海娱乐活动及海洋生物的各项生理活动都会造成影响。为加深对该释放过程的认识,本文阐述了海洋沉积物中石油类污染物的释放机理,重点分析了海床液化失稳对该过程的影响机制,总结了石油类污染物释...  相似文献   
809.
李辉  庞博  朱法华  孙雪丽  徐静馨  王圣 《环境科学》2022,43(11):5294-5304
选取2020年世界能源消费量累积占比达80%的前23个国家作为研究对象,通过从一次能源清洁化率、化石能源清洁利用率和电能占终端能源消费率角度对其能源消费结构进行对比研究,从单位GDP能耗、人均能耗和单位国土面积能耗角度,结合产业结构和分部门能源消费构成,对其能源消费强度进行深入分析,探讨各国在社会经济运行与生产生活中的能源消费模式,提出能源消费自然碳汇承载负荷比概念,指出我国在碳达峰与碳中和目标下能源消费模式转型面临的优势与挑战.结果表明,我国一次能源清洁化率、发电用能占比、化石能源清洁化利用率和电能占终端能耗比分别达到15.90%、53.48%、37.51%和26.54%,均在世界主要能源消费国家中处于前列,已经架构起良好的能源集约化和清洁化利用结构基础;非工农业能源消费占比尤其是仅为14.09%的交通能源占比在主要能源消费国中最低,已经形成了具有相对优势的绿色低碳能源消费模式;基于产业结构优化潜在的总体能源生产率还有较大提升空间;但相对较短的碳达峰与碳中和目标期对清洁能源发展速度与规模提出了巨大挑战,碳排放约束下的国际形势对我国通过优化调整产业结构实现降碳目标也增加了难度.  相似文献   
810.
生物炭施用对黄壤土壤养分及酶活性的影响   总被引:3,自引:3,他引:0  
袁访  李开钰  杨慧  邓承佳  梁红  宋理洪 《环境科学》2022,43(9):4655-4661
生物炭因其具有特殊的理化性质,作为土壤改良剂或调理剂被广泛应用于改善土壤质量;土壤养分与土壤酶活性是表征土壤质量化学性质和生物学性质的重要指标.采用大田试验,研究生物炭不同施用水平:0(CK)、5(B5)、10(B10)、20(B20)和50(B50) t·hm-2对黄壤养分和土壤酶活性的影响,运用结构方程模型(SEM)定量分析生物炭处理对土壤养分和酶活性的直接或间接影响及其作用大小.结果表明,生物炭显著增加土壤pH值、电导率、有机碳、碱解氮、有效磷和速效钾(P<0.05);随生物炭施用量的增加,土壤过氧化氢酶和脲酶活性先增加后降低,磷酸酶和蔗糖酶活性增加(P<0.05);B10处理下,土壤过氧化氢酶、脲酶和磷酸酶的活性均达到最大值,蔗糖酶活性也相对较高.随生物炭作用时间增加,土壤pH值、碱解氮、有效磷和速效钾含量均增加,而电导率和有机碳与之相反;过氧化氢酶活性降低,脲酶和磷酸酶活性升高,蔗糖酶活性无明显变化规律.SEM结果显示,生物炭施用对过氧化氢酶具有直接的负效应;通过提升pH、电导率、有机碳和碱解氮含量间接影响过氧化氢酶活性,通过提升pH和电导率间接促进蔗糖酶活性,通过提高电导率以及碱解氮和有效磷含量间接增加磷酸酶活性.综上,生物炭施用量及作用时间显著影响土壤养分含量,进而间接作用于土壤酶活性;酸性黄壤施用10 t·hm-2的生物炭较为适宜.  相似文献   
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